Science, Volume 310, Issues 5751-5756John Michels (Journalist) 2005 |
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Page 1141
... Substrate stiffness influences contractility , motility , and spreading . ( A ) Interplay of physical and biochemical signals in the feedback of matrix stiffness on contractility and cell signaling as extended from ( 97 ) . ( B ) Cells ...
... Substrate stiffness influences contractility , motility , and spreading . ( A ) Interplay of physical and biochemical signals in the feedback of matrix stiffness on contractility and cell signaling as extended from ( 97 ) . ( B ) Cells ...
Page 1142
... substrate stiffness ( Fig . 3B ) , as demonstrated in studies of the " cell on gel " effect with epithelial cells ( 14 ) , fibroblasts ( 20 ) , and smooth muscle cells ( 53 , 54 ) . With the latter cell type , crawling speed appears ...
... substrate stiffness ( Fig . 3B ) , as demonstrated in studies of the " cell on gel " effect with epithelial cells ( 14 ) , fibroblasts ( 20 ) , and smooth muscle cells ( 53 , 54 ) . With the latter cell type , crawling speed appears ...
Page 1459
... substrate transfer through the membrane translocase comprised of either or both VirD4 and VirB6 . The DNA substrate translocates to the cell surface via a channel comprised of VirB2 pilin and secretin - like VirB9 . ATP energy also ...
... substrate transfer through the membrane translocase comprised of either or both VirD4 and VirB6 . The DNA substrate translocates to the cell surface via a channel comprised of VirB2 pilin and secretin - like VirB9 . ATP energy also ...
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